- Add k8s/ manifests (StatefulSet, kustomize, PDB, ServiceMonitor) + docs/runbooks/kubernetes.md - Add tidal-server/src/openapi.rs (utoipa OpenAPI spec) and wire into router - Add docs/guides/ (build-a-feed-app, embeddings, server-deployment) + foryou_feed example - Consolidate tidal/docker/ into root docker/ (single canonical home) - Update API.md, QUICKSTART.md, README.md, CLAUDE.md, check-docs.sh accordingly
207 lines
9.3 KiB
Markdown
207 lines
9.3 KiB
Markdown
# tidalDB on Kubernetes
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How to run tidalDB on Kubernetes: a hardened, single-node **standalone**
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deployment as a `StatefulSet` with a durable volume, the three health probes,
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metrics, secret-backed auth, and graceful rolling updates. The manifests live in
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[`k8s/`](../../k8s/) and apply with `kubectl apply -k k8s/`.
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> ## Deploy the STANDALONE server, one replica
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>
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> tidalDB is single-node-first: the server wraps one embedded engine whose state
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> (WAL + checkpoints + indexes) lives on a data dir. It scales **vertically**
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> (a bigger pod), not by adding replicas — there is no shared-storage multi-writer
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> mode, so `replicas: 1` in the StatefulSet is load-bearing. The experimental
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> multi-region `cluster` subcommand runs every region inside **one process** over
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> loopback gRPC ([NOT production HA](cluster.md)), so it does not make this an HA
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> story either. Run one standalone pod, back it with a durable `PersistentVolume`,
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> and recover from the WAL on restart (see [recovery](../ops/recovery.md)). True
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> multi-process HA is tracked as **m8p10** in
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> [ROADMAP.md](../planning/ROADMAP.md).
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## What's in `k8s/`
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| File | Purpose |
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|------|---------|
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| `namespace.yaml` | The `tidaldb` namespace |
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| `schema-configmap.yaml` | The schema YAML the server loads (`--schema`); edit for your signals |
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| `statefulset.yaml` | The server: durable PVC, probes, security context, resources |
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| `service.yaml` | Headless `Service` for stable DNS + in-cluster clients |
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| `poddisruptionbudget.yaml` | `maxUnavailable: 0` — a drain can't silently kill the single node |
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| `secret.example.yaml` | Template for the API-key secret (create the real one out-of-band) |
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| `servicemonitor.yaml` | Optional Prometheus-Operator scrape config (apply separately) |
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| `kustomization.yaml` | Ties the core resources together for `kubectl apply -k` |
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## Prerequisites
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- A Kubernetes cluster (1.25+) and `kubectl` pointed at it. For local testing,
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[`kind`](https://kind.sigs.k8s.io/) is used in the walkthrough below.
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- A container registry the cluster can pull from (for real clusters), or a local
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image loaded into the node (for `kind`). The image is built from
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[`docker/deploy/Dockerfile`](../../docker/deploy/Dockerfile).
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- A default `StorageClass` (for dynamic `PersistentVolumeClaim` provisioning).
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`kind`, GKE, EKS, and AKS all ship one.
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## Deploy
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### 1. Build and publish the image
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```bash
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# From the repo root — the build context must be the workspace root.
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docker build -f docker/deploy/Dockerfile -t <registry>/tidaldb:<tag> .
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docker push <registry>/tidaldb:<tag>
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```
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Set that reference in `k8s/statefulset.yaml` (`image:`), pinned by digest in
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production (`@sha256:...`).
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### 2. Create the namespace and the API-key secret
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The secret is deliberately **not** in the kustomization so no key lands in git.
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Create it directly:
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```bash
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kubectl create namespace tidaldb
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kubectl -n tidaldb create secret generic tidaldb-api-key \
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--from-literal=api-key="$(openssl rand -hex 32)"
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```
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In production, manage it with External Secrets Operator, Sealed Secrets, or
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Vault Agent instead. The StatefulSet injects it as `TIDAL_API_KEY` — clients
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then send `Authorization: Bearer <key>` on every data route. **If the secret is
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empty the server runs unauthenticated and logs a WARN — never do that on a
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shared network.**
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### 3. Edit the schema (optional)
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`k8s/schema-configmap.yaml` carries the schema the server loads. Edit it to model
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your signals, text fields, embedding slots, and (optionally) ranking profiles —
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the format is documented in [server-deployment.md](../guides/server-deployment.md).
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The schema is read once at boot; roll the StatefulSet to apply changes.
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### 4. Apply
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```bash
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kubectl apply -k k8s/
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kubectl -n tidaldb rollout status statefulset/tidaldb --timeout=180s
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```
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### 5. Verify
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```bash
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kubectl -n tidaldb port-forward statefulset/tidaldb 9400:9400 &
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KEY=$(kubectl -n tidaldb get secret tidaldb-api-key -o jsonpath='{.data.api-key}' | base64 -d)
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curl -s localhost:9400/health # {"ok":true,...}
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curl -s localhost:9400/openapi.json | jq .info # served API contract
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curl -s -X POST localhost:9400/items \
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-H "Authorization: Bearer $KEY" -H 'Content-Type: application/json' \
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-d '{"entity_id":1,"metadata":{"title":"hello","category":"demo","created_at":"1700000000"}}'
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curl -s -H "Authorization: Bearer $KEY" "localhost:9400/feed?profile=trending&limit=5"
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```
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## How the health probes map
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The server exposes three unauthenticated endpoints, wired to the three probe
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types in `statefulset.yaml`:
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| Probe | Endpoint | Behavior |
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|-------|----------|----------|
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| `startupProbe` | `GET /health/startup` | 200 once the HTTP listener is up; high `failureThreshold` covers slow WAL replay / index load on large data dirs (see [capacity-planning](../ops/capacity-planning.md)) |
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| `livenessProbe` | `GET /health/live` | 200 while the process is alive; restart if it stops answering |
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| `readinessProbe` | `GET /health` | 200 ready / **503 while draining** — on SIGTERM the pod leaves the Service endpoints before it stops accepting |
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## Rolling updates and graceful shutdown
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On `kubectl rollout restart` (or any pod delete), the kubelet sends SIGTERM. The
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server flips readiness to 503 (so it leaves the Service), drains in-flight
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requests, then checkpoints and fsyncs the WAL before exit.
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`terminationGracePeriodSeconds: 60` gives that room — raise it if your data dir
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is large. Because there is one replica, a restart is a brief planned outage
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while the new pod replays the WAL; the `PodDisruptionBudget` (`maxUnavailable:
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0`) prevents an *involuntary* drain from taking the node down without operator
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intent.
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## Persistence and backup
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The `volumeClaimTemplate` provisions a `PersistentVolumeClaim` (`/data`, 10Gi by
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default — size it from [capacity-planning](../ops/capacity-planning.md)). The WAL
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+ checkpoints there are the source of truth and survive pod restarts. For backup
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and disaster recovery (snapshotting the PVC, restoring a corrupt data dir), see
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[recovery](../ops/recovery.md).
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## Metrics
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The pod exposes Prometheus metrics on `:9091/metrics` (**unauthenticated** — it is
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not exposed by the headless Service externally; keep it cluster-internal). Scrape
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it one of two ways:
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- **Prometheus Operator:** `kubectl apply -f k8s/servicemonitor.yaml` (requires the
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`monitoring.coreos.com` CRDs).
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- **Plain Prometheus:** the pod carries `prometheus.io/scrape`, `prometheus.io/port`,
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and `prometheus.io/path` annotations.
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Alert rules and a dashboard ship in [`docs/ops/prometheus-alerts.yaml`](../ops/prometheus-alerts.yaml)
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and [`docs/ops/grafana-dashboard.json`](../ops/grafana-dashboard.json); see
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[monitoring](../ops/monitoring.md).
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## Local walkthrough with `kind`
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This is the exact flow used to verify the manifests end-to-end:
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```bash
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# 1. Create a local cluster.
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kind create cluster --name tidaldb
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# 2. Build the image and load it into the kind node (no registry needed).
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docker build -f docker/deploy/Dockerfile -t tidaldb:deploy .
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kind load docker-image tidaldb:deploy --name tidaldb
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# 3. Namespace + API-key secret.
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kubectl create namespace tidaldb
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kubectl -n tidaldb create secret generic tidaldb-api-key \
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--from-literal=api-key="$(openssl rand -hex 32)"
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# 4. Apply and wait for ready.
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kubectl apply -k k8s/
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kubectl -n tidaldb rollout status statefulset/tidaldb --timeout=240s
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# 5. Verify, then tear down.
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kubectl -n tidaldb port-forward statefulset/tidaldb 9400:9400 &
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curl -s localhost:9400/health
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kind delete cluster --name tidaldb
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```
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The manifests set `image: tidaldb:deploy` with `imagePullPolicy: IfNotPresent`,
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which is exactly what `kind load` + a local tag need. For a real cluster, swap in
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your registry image.
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> **`kind create cluster` fails with "could not find a log line that matches …
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> Multi-User System"?** On Docker Desktop the node's `systemd` can die at boot
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> with `Failed to create control group inotify object: Too many open files`
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> (`docker logs <cluster>-control-plane` shows it). The Docker VM's inotify
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> limits are too low; raise them in the VM kernel, then recreate:
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>
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> ```bash
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> docker run --rm --privileged alpine sysctl -w fs.inotify.max_user_instances=8192
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> kind delete cluster --name tidaldb && kind create cluster --name tidaldb
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> ```
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>
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> This is a kind-on-Docker-Desktop prerequisite, unrelated to tidalDB.
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## Troubleshooting
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| Symptom | Likely cause |
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|---------|--------------|
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| Pod `Pending` | No default `StorageClass`, or the PVC can't bind — `kubectl -n tidaldb describe pvc data-tidaldb-0` |
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| Pod `CrashLoopBackOff` at boot | Bad schema YAML in the ConfigMap, or a data dir from an incompatible schema — check logs; see [recovery § schema mismatch](../ops/recovery.md) |
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| Pod never `Ready`, but `Running` | Readiness probe failing — `kubectl -n tidaldb logs statefulset/tidaldb`; a large data dir may need a longer `startupProbe` |
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| `401 Unauthorized` on data routes | Wrong/empty `tidaldb-api-key` secret; clients must send `Authorization: Bearer <key>` |
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| Writes lost after restart | Data dir not on the PVC — confirm `--data-dir /data` and the `data` volume mount |
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## See also
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- [Server deployment guide](../guides/server-deployment.md) — config, auth, the served OpenAPI spec
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- [Build a feed app](../guides/build-a-feed-app.md) — what to run against this server
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- [Cluster runbook](cluster.md) — the experimental multi-region mode (not production HA)
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- [Monitoring](../ops/monitoring.md) · [Capacity planning](../ops/capacity-planning.md) · [Recovery](../ops/recovery.md)
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